An ingestible origami-inspired metamaterial for prolonged oral delivery of therapeutics

F Farhad Javid S Sahab Babaee J Jasmine Quigley A Ameya Kirtane H Hormoz Mazdiyasni J Jaimie Rogner C Cody Cleveland T Taylor Bensel V Vance Soares J Joy E. Collins K Kaitlyn Hess S Shane McDonnell A Alison M. Hayward R Robert Langer G Giovanni Traverso

Abstract

Abstract Poor adherence to oral drug regimens adversely affects treatment outcomes and contributes substantially to preventable healthcare costs, underscoring the need for long-acting drug delivery systems that sustain therapeutic levels over extended periods. To address this, we developed an origami-inspired, oral drug delivery dosage form capable of prolonged residence in the gastric cavity. This system achieves ease of administration and extended gastric residency through geometric design and shape optimization, allowing the dosage form to fold inside a standard ingestible capsule. Upon the capsule’s dissolution in the stomach, the dosage form rapidly transforms into its deployed configuration. Our formulation and manufacturing techniques enable the development of a long-acting dosage form with up to 40% weight loading capacity of sample drugs, such as moxifloxacin. The high surface-area-to-volume ratio of the origami design enables approximately linear release kinetics over the observed time window of candidate drugs. We incorporated pH-sensitive elements that dissolve in the neutral portions of the GI tract into the dosage form to promote its dissociation and safe transit in the intestine. In vitro and in vivo studies using swine models demonstrated extended gastric residency of up to three weeks (with a minimum of one week) and an approximately constant release rate for three days. Endoscopic and radiographic evaluations of the animal models confirmed that the dosage forms safely pass through the intestine without causing gastrointestinal obstruction or injury.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 27, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

F

Farhad Javid

S

Sahab Babaee

J

Jasmine Quigley

A

Ameya Kirtane

H

Hormoz Mazdiyasni

J

Jaimie Rogner

C

Cody Cleveland

T

Taylor Bensel

V

Vance Soares

J

Joy E. Collins

K

Kaitlyn Hess

S

Shane McDonnell

A

Alison M. Hayward

R

Robert Langer

G

Giovanni Traverso